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Hydrogeology of the San Xavier Mining Laboratory and Geophysics Test Site and surrounding areaBohannon, Stacy Jo, January 1991 (has links) (PDF)
Thesis (M.S. - Hydrology and Water Resources)--University of Arizona. / Includes bibliographical references (leaves 184-187).
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Application of boron isotope ratios for identifying nitrate contamination sources in the groundwater of Avra Valley, Arizona.Leenhouts, James M. January 1994 (has links) (PDF)
Thesis (M.S. - Hydrology and Water Resources)--University of Arizona, 1994. / Includes bibliographical references (leaves 133-135).
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Possible water pollution sources in Sabino Creek, Santa Catalina Mountains, ArizonaHaile, Abdi Barre, January 1987 (has links) (PDF)
Thesis (M.S. - Hydrology and Water Resources)--University of Arizona, 1987. / Includes bibliographical references (leaves 77-79).
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Assessing petrified wood change in Petrified Forest National Park /Monkevich, Nicholas Scott, January 1994 (has links)
Thesis (M.S.)--Virginia Polytechnic Institute and State University, 1994. / Vita. Abstract. Includes bibliographical references (leaves 199-200). Also available via the Internet.
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Geomorphology of the Box Canyon Drainage Basin, Santa Rita Mountains, Pima County, ArizonaVan Fleet, John Milton, 1948- January 1973 (has links)
No description available.
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The geology and mineralization of the Antler Mine and vicinity, Mohave County, ArizonaMore, Syver Wakeman January 1980 (has links)
No description available.
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GEOLOGICAL AND EXPLORATION CHARACTERISTICS OF PRECIOUS-METAL MINERALIZATION AT THE VOLCANO MINE AND VICINITY, PELONCILLO MOUNTAINS, HIDALGO COUNTY, NEW MEXICO.Young, Thomas Henry. January 1982 (has links)
No description available.
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Optimal well field design for reducing phreatophyte uptake lossesNelson, Gregory A. January 1989 (has links)
A two-dimensional, finite difference model was used to simulate the lowering of the water table below a floodplain in order to affect water conservation by reducing phreatophyte transpiration. Evapotranspiration capture percentages and unit water costs associated with alternative well network designs were calculated in order to determine those factors which are most important in designing an evapotranspiration capture project.
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Homol'ovi II: Archaeology of an Ancestral Hopi Village, ArizonaJanuary 1991 (has links)
Homol'ovi II is a fourteenth-century, ancestral Hopi pueblo with over 700 rooms. Although known by archaeologists since 1896, no systematic excavations were conducted at the pueblo until 1984. This report summarizes the findings of the excavations by the Arizona State Museum of five rooms and an outside activity area, which now form the core of the interpretive program for Homolovi Ruins State Park. The significant findings reported here are that the excavated deposits date between A.D. 1340 and 1400; that nearly all the decorated ceramics during this period were imported from villages on the Hopi Mesas; that cotton was a principal crop which probably formed the basis of Homol'ovi II's participation in regional exchange; that chipped stone was a totally expedient technology in contrast to ground stone which was becoming more diverse; and that the katsina cult was probably present or developing at Homol'ovi II. These findings from the basis for future excavations that should broaden our knowledge of the developments taking place in fourteenth-century Pueblo society connecting the people whom archaeologists term the Anasazi with those calling themselves Hopi.
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APPLICATION OF BORON ISOTOPE RATIOS FOR IDENTIFYING NITRATE CONTAMINATION SOURCES IN THE GROUNDWATER OF AVRA VALLEY, ARIZONALeenhouts, James Merrell, Basset, R. L., Maddock, Thomas, III 06 1900 (has links)
The stable isotopes of the conservative element boron, 11B and 1°B, have been
employed as co- migrating isotopic tracers to determine the origin of nitrate observed in
groundwater from a large capacity (2500 gpm) irrigation well in the Avra Valley of
southeastern Arizona. The isotopic ratios of the conservative element, boron, provided an
identifying signature for various nitrate rich source waters. Additional chemical
parameters were also examined to corroborate the isotopic indications.
Findings of this investigation indicate that most of the nitrate observed in
groundwater from well CMID 18 at the beginning of the 1993 irrigation season was due
to municipal wastewater contamination. As the irrigation season progressed, an increasing
proportion of nitrate was contributed by irrigation return flow from neighboring
agricultural fields.
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